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Investigation of Liner Characteristics in the NASA Langley Curved Duct Test Rig

机译:NASA兰利弯管试验台的衬管特性研究

摘要

The Curved Duct Test Rig (CDTR), which is designed to investigate propagation of sound in a duct with flow, has been developed at NASA Langley Research Center. The duct incorporates an adaptive control system to generate a tone in the duct at a specific frequency with a target Sound Pressure Level and a target mode shape. The size of the duct, the ability to isolate higher order modes, and the ability to modify the duct configuration make this rig unique among experimental duct acoustics facilities. An experiment is described in which the facility performance is evaluated by measuring the sound attenuation by a sample duct liner. The liner sample comprises one wall of the liner test section. Sound in tones from 500 to 2400 Hz, with modes that are parallel to the liner surface of order 0 to 5, and that are normal to the liner surface of order 0 to 2, can be generated incident on the liner test section. Tests are performed in which sound is generated without axial flow in the duct and with flow at a Mach number of 0.275. The attenuation of the liner is determined by comparing the sound power in a hard wall section downstream of the liner test section to the sound power in a hard wall section upstream of the liner test section. These experimentally determined attenuations are compared to numerically determined attenuations calculated by means of a finite element analysis code. The code incorporates liner impedance values educed from measured data from the NASA Langley Grazing Incidence Tube, a test rig that is used for investigating liner performance with flow and with (0,0) mode incident grazing. The analytical and experimental results compare favorably, indicating the validity of the finite element method and demonstrating that finite element prediction tools can be used together with experiment to characterize the liner attenuation.
机译:美国国家航空航天局兰利研究中心已开发出了弯管试验台(CDTR),旨在研究管道中的声音在流动中的传播。该风管集成了自适应控制系统,可在特定频率下在风管中产生具有目标声压级和目标模式形状的音调。管道的尺寸,隔离高阶模式的能力以及修改管道配置的能力使该装置在实验性管道声学设施中独树一帜。描述了一个实验,其中通过测量样品导管衬里的声音衰减来评估设备性能。衬里样品包括衬里测试部分的一壁。可以产生500到2400 Hz音调的声音,其模式平行于0到5阶的衬里表面,并且垂直于0到2阶的衬里表面。执行测试时,在管道中没有轴向流动且马赫数为0.275的情况下不会产生声音。衬垫的衰减是通过将衬垫测试部分下游的硬壁部分中的声功率与衬垫测试部分上游的硬壁部分中的声功率进行比较来确定的。将这些实验确定的衰减与借助有限元分析代码计算出的数字确定的衰减进行比较。该代码包含了衬管阻抗值,该阻抗是从NASA兰利掠牧事故发生管的测量数据中得出的,该试验台用于研究流量和(0,0)模式入射掠掠时的衬管性能。分析结果和实验结果比较令人满意,表明有限元方法的有效性,并表明有限元预测工具可与实验一起使用以表征衬管衰减。

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